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Bending stress induced improved chemiresistive gas sensing characteristics of flexible cobalt-phthalocyanine thin films

机译:弯曲应力可改善柔性钴酞菁薄膜的化学阻气性气敏特性

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We report chemiresistive gas sensing characteristics of cobalt phthalocyanine films deposited on flexible bi-axially oriented polyethylene terephthalate substrates. Charge carrier mobility in these films systematically decreases upon bending, which implies that bending reduces π-π interactions among molecules. At room temperature, these films exhibited a reversible change in resistance on exposure to ammonia (5–50?ppm) along with high sensitivity and selectivity as well as fast response and recovery. The chemiresistive sensing properties were found to improve significantly under bend conditions owing to creation of more numbers of interaction sites.
机译:我们报告沉积在柔性双轴取向聚对苯二甲酸乙二酯衬底上的钴酞菁薄膜的化学气体传感特性。这些膜中的电荷载流子迁移率在弯曲时会系统降低,这意味着弯曲会减少分子之间的π-π相互作用。在室温下,这些薄膜在暴露于氨水(5-50ppm)时显示出可逆的电阻变化,并具有高灵敏度和选择性以及快速的响应和恢复能力。由于产生更多数量的相互作用位点,发现在弯曲条件下化学阻滞感测性能显着改善。

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